Carbon quality rather than stoichiometry controls litter decomposition in a tropical rain forest

被引:308
作者
Haettenschwiler, Stephan [1 ]
Jorgensen, Helene Bracht [1 ]
机构
[1] CNRS, CEFE, F-34293 Montpellier 5, France
关键词
Amazonian lowland forest; detritivores; elemental ratios; litter chemistry; litter diversity; nitrogen; nutrient dynamics; phosphorus; soil fauna; N-P STOICHIOMETRY; SPECIES RICHNESS; ECOSYSTEM FUNCTION; DIVERSITY; SOIL; BIODIVERSITY; RATES; CONSEQUENCES; LIMITATION; RESORPTION;
D O I
10.1111/j.1365-2745.2010.01671.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
P>1. Ecological stoichiometry predicts important control of the relative abundance of the key elements carbon (C), nitrogen (N) and phosphorus (P) on trophic interactions. In a nutrient-poor Amazonian lowland rain forest of French Guiana, we tested the hypothesis that decomposers exploit stoichiometrically diverse plant litter more efficiently, resulting in faster litter decomposition compared to litter with a uniform stoichiometry. 2. In a field experiment in the presence or absence of soil macrofauna, we measured litter mass loss, and N and P dynamics from all possible combinations of leaf litter from four common tree species which were distinctly separated along a C:N and along a N:P gradient. 3. Mean litter mass remaining after 204 days of field exposure varied between 25.2% and 71.3% among litter treatments. Fauna increased litter mass loss by 18%, N loss by 21% and P loss by 14%. Litter species richness had no effect on litter mass loss or nutrient dynamics. In contrast, litter mass and nutrient losses increased with increasing stoichiometric dissimilarity of litter mixtures in presence of fauna, suggesting faster decomposition of a stoichiometrically more heterogeneous litter. 4. However, the effect of stoichiometric dissimilarity was smaller than the strong C quality related litter composition effect and disappeared in the absence of fauna. Increasing proportions of litter that is relatively rich in accessible C compounds (non-structural carbohydrates, phenolics) and relatively poor in recalcitrant C (condensed tannins, lignin), correlated best with litter mass loss irrespective of fauna presence. No correlation was found for any of the nutrient related litter quality parameters and decomposition. 5.Synthesis. Our results suggest that Amazonian decomposer communities studied here are primarily limited by energy, and only secondarily by litter stoichiometry. Tropical tree species might thus influence decomposers and detritivores by the production of litter of specific C quality with potentially important feedback effects on ecosystem nutrient dynamics and availability.
引用
收藏
页码:754 / 763
页数:10
相关论文
共 50 条
[1]  
[Anonymous], 1998, 84 FAOISRICISSS
[2]   Consequences of non-random species loss for decomposition dynamics: experimental evidence for additive and non-additive effects [J].
Ball, Becky A. ;
Hunter, Mark D. ;
Kominoski, John S. ;
Swan, Christopher M. ;
Bradford, Mark A. .
JOURNAL OF ECOLOGY, 2008, 96 (02) :303-313
[3]   Impact of severe dry season on net ecosystem exchange in the Neotropical rainforest of French Guiana [J].
Bonal, Damien ;
Bosc, Alexandre ;
Ponton, Stephane ;
Goret, Jean-Yves ;
Burban, Benoit ;
Gross, Patrick ;
Bonnefond, Jean-Marc ;
Elbers, Jan ;
Longdoz, Bernard ;
Epron, Daniel ;
Guehl, Jean-Marc ;
Granier, Andre .
GLOBAL CHANGE BIOLOGY, 2008, 14 (08) :1917-1933
[4]   Stoichiometric constraints on resource use, competitive interactions, and elemental cycling in microbial decomposers [J].
Cherif, Mehdi ;
Loreau, Michel .
AMERICAN NATURALIST, 2007, 169 (06) :709-724
[5]   Nutrient regulation of organic matter decomposition in a tropical rain forest [J].
Cleveland, CC ;
Reed, SC ;
Townsend, AR .
ECOLOGY, 2006, 87 (02) :492-503
[6]   Phosphorus limitation of microbial processes in moist tropical forests: Evidence from short-term laboratory incubations and field studies [J].
Cleveland, CC ;
Townsend, AR ;
Schmidt, SK .
ECOSYSTEMS, 2002, 5 (07) :680-691
[7]   C:N:P stoichiometry in soil:: is there a "Redfield ratio" for the microbial biomass? [J].
Cleveland, Cory C. ;
Liptzin, Daniel .
BIOGEOCHEMISTRY, 2007, 85 (03) :235-252
[8]   Interspecific variation in leaf litter tannins drives decomposition in a tropical rain forest of French Guiana [J].
Coq, Sylvain ;
Souquet, Jean-Marc ;
Meudec, Emmanuelle ;
Cheynier, Veronique ;
Hattenschwiler, Stephan .
ECOLOGY, 2010, 91 (07) :2080-2091
[9]   Plant species traits are the predominant control on litter decomposition rates within biomes worldwide [J].
Cornwell, William K. ;
Cornelissen, Johannes H. C. ;
Amatangelo, Kathryn ;
Dorrepaal, Ellen ;
Eviner, Valerie T. ;
Godoy, Oscar ;
Hobbie, Sarah E. ;
Hoorens, Bart ;
Kurokawa, Hiroko ;
Perez-Harguindeguy, Natalia ;
Quested, Helen M. ;
Santiago, Louis S. ;
Wardle, David A. ;
Wright, Ian J. ;
Aerts, Rien ;
Allison, Steven D. ;
van Bodegom, Peter ;
Brovkin, Victor ;
Chatain, Alex ;
Callaghan, Terry V. ;
Diaz, Sandra ;
Garnier, Eric ;
Gurvich, Diego E. ;
Kazakou, Elena ;
Klein, Julia A. ;
Read, Jenny ;
Reich, Peter B. ;
Soudzilovskaia, Nadejda A. ;
Victoria Vaieretti, M. ;
Westoby, Mark .
ECOLOGY LETTERS, 2008, 11 (10) :1065-1071
[10]  
Epps KY, 2007, OIKOS, V116, P1831, DOI [10.1111/j.2007.0030-1299.15853.x, 10.1111/j.0030-1299.2007.15853.x]